CN209217918U - A kind of engine direct drive generator with flywheel - Google Patents

A kind of engine direct drive generator with flywheel Download PDF

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Publication number
CN209217918U
CN209217918U CN201822161119.3U CN201822161119U CN209217918U CN 209217918 U CN209217918 U CN 209217918U CN 201822161119 U CN201822161119 U CN 201822161119U CN 209217918 U CN209217918 U CN 209217918U
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CN
China
Prior art keywords
stator
flywheel
core
rotor
engine direct
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201822161119.3U
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Chinese (zh)
Inventor
史立伟
司涛
童拉念
马清芝
王静
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
JUN TANG LING OU SHANDONG AUTOMOBILE MANUFACTURING Co Ltd
Original Assignee
JUN TANG LING OU SHANDONG AUTOMOBILE MANUFACTURING Co Ltd
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Filing date
Publication date
Application filed by JUN TANG LING OU SHANDONG AUTOMOBILE MANUFACTURING Co Ltd filed Critical JUN TANG LING OU SHANDONG AUTOMOBILE MANUFACTURING Co Ltd
Priority to CN201822161119.3U priority Critical patent/CN209217918U/en
Application granted granted Critical
Publication of CN209217918U publication Critical patent/CN209217918U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)

Abstract

A kind of engine direct drive generator with flywheel, belongs to car electrics technical field.Rotor including stator and relative rotation, it is characterized by: rotor is set in the outside of stator, the outer surface of stator is provided with multiple stator cores (6), stator core (6) includes two stator poles, it is wound with excitation winding (1) and armature winding (5) respectively in two stator poles, excitation winding (1) and armature winding (5) are located in the ipsilateral stator poles of corresponding stator core (6);The inner surface of rotor is provided with rotor core (2) identical with stator core (6) number, cooperatively forms the magnetic circuit that magnetic linkage passes through inside and outside stator core (6) and rotor core (2).It is driven in generator with flywheel in this engine direct, excitation winding and armature winding all be arrangeds in stator poles, therefore rotor is without excitation winding, and structure is simply, reliable operation is, it can be achieved that high-speed rotation.

Description

A kind of engine direct drive generator with flywheel
Technical field
A kind of engine direct drive generator with flywheel, belongs to car electrics technical field.
Background technique
It studies automotive performance, improve great attention of the car mass by national governments, automaker and scientific research institutions. Automotive electrical system is one of important component of automobile, and the quality of performance directly affects the dynamic property of automobile, economy The performances such as property, comfort, safety.With the development of science and technology requirement of the people to car comfort and security reliability is more next It is higher.Automobile has evolved into the daily necessities that height relies on for people's lives from initial simple walking-replacing tool.
In the power-supply system of automobile, generator is particularly important component part, with Hyundai Motor forward security, The directions such as high speed, lightness are developed, and correspondingly to generator, higher requirements are also raised.Currently, magneto-electric generator accounts for The specific gravity of electric generators for automobile is larger, and magneto-electric generator generates rotating excitation field using permanent magnet as rotor magnetic pole, and rotor is straight Diameter substantially reduces, and quality mitigates therewith, has fully phased out brush.But permanent magnetic generator for vehicle is as follows there are still having in the prior art Disadvantage: production cost is higher, and high temperature and vibration environment bad adaptability, voltage regulation techniques are not mature enough, and are overlapped between winding Winding, therefore heat dissipation performance is poor.
Utility model content
Technical problem to be solved by the utility model is: overcome the deficiencies of the prior art and provide it is a kind of by excitation winding and Armature winding is all arranged in stator poles, therefore rotor is without excitation winding, and structure is simple, reliable operation is, it can be achieved that high-speed rotation Engine direct drive generator with flywheel.
The technical scheme adopted by the utility model to solve the technical problem is as follows: the engine direct drives generator with flywheel, Rotor including stator and relative rotation, it is characterised in that: rotor is set in the outside of stator, is provided in the outer surface of stator Multiple stator cores, each stator core include two stator poles, are wound with excitation winding and electricity respectively in two stator poles Pivot winding, excitation winding and armature winding are located in the ipsilateral stator poles of corresponding stator core;
The inner surface of rotor is provided with rotor core identical with stator core number, in stator core and rotor core Fit on forms the magnetic circuit that magnetic linkage passes through;
Stator core is in horseshoe type, and bottom is embedded in the outer surface of stator fixed block, and the upper end two sides are fixed as two Sub- pole protrudes from the surface of stator fixed block, is spaced between two stator poles and forms stator slot, at the top slot of stator slot Two sides extend inwardly to form semiclosed notch.
Preferably, the rotor includes flywheel, and the rotor core is uniformly embedded in the inner wall of flywheel.
Preferably, the outer end of the rotor core is provided with trapezoidal protrusion, and rotor core is installed on by trapezoidal protrusion In the inner wall of flywheel.
Preferably, the rotor core uses permeability magnetic material, and flywheel uses non-magnet material.
Preferably, the stator includes stator fixed block, and the stator core is uniformly embedded in the outer of stator fixed block Surface is additionally provided with stator axis at stator fixed block center.
Preferably, the excitation winding and armature winding are centralized winding, the excitation winding in all stator cores Around to consistent, armature winding in all stator cores around to consistent, excitation winding and armature winding around to opposite.
Preferably, the stator fixed block uses non-magnet material, and the stator core uses permeability magnetic material.
Preferably, the inner face of the rotor core is inner concave shape cambered surface, and stator core is corresponding with rotor core outer End face is male type cambered surface, and the arc length of rotor core inner face is identical as the arc length of stator core outer end face.
Compared with prior art, beneficial effect possessed by the utility model is:
1, it being driven in generator with flywheel in this engine direct, excitation winding and armature winding are all arranged in stator poles, because This rotor is without excitation winding, and structure is simple, reliable operation is, it can be achieved that high-speed rotation.
2, driving in generator with flywheel in this engine direct does not have lap wound between each winding, plays the work being thermally isolated With.
3, stator core independently, can effectively realize Magnetic isolation, avoid and interact between each winding.
4, stator core and rotor core make motor have shorter magnetic linkage length, and iron loss is obviously reduced.
Detailed description of the invention
Fig. 1 is that engine direct drives generator with flywheel structural schematic diagram.
Fig. 2 is status diagram when engine direct drives generator with flywheel magnetic linkage maximum.
Fig. 3 is that engine direct drives generator with flywheel embedding figure.
Fig. 4 is that engine direct drives generator with flywheel rectification circuit schematic diagram.
Wherein: 1, excitation winding 2, rotor core 3, stator fixed block 4, stator axis 5, armature winding 6, fixed Sub- iron core 7, flywheel 8, the magnetic line of force.
Specific embodiment
Fig. 1 ~ 4 are the most preferred embodiments of the utility model, and 1 ~ 4 pair of the utility model is done furtherly with reference to the accompanying drawing It is bright.
As shown in Figure 1, a kind of engine direct drives generator with flywheel, including stator and it is set in the flywheel of stator exterior 7, flywheel 7 and stator relatively rotate.Multiple grooves are uniformly provided on the inner wall of flywheel 7, it is interior respectively in each groove Embedded with a rotor core 2, the outer end of rotor core 2 is provided with trapezoidal protrusion, rotor core 2 is installed on by trapezoidal protrusion The inner surface of flywheel 7, rotor core 2 are provided with eight groups altogether on the inner wall of flywheel 7.Flywheel 7 is made of non-magnet material, is turned Sub- iron core 2 is made of permeability magnetic material.
Stator includes stator fixed block 3, and stator fixed block 3 is made of non-magnet material, at the center of stator fixed block 3 Place is provided with stator axis 4.Multiple stator cores 6 are evenly arranged in the outlet of stator fixed block 3, drives and flies in this engine direct In wheel-type electric generator, the rotor core 2 in stator core 6 and 7 inner wall of flywheel is corresponded, and is again provided with eight groups.Stator iron The heart 6 is in horseshoe type, and bottom is embedded in inside stator fixed block 3, and the upper end two sides protrude from stator as two stator poles and consolidate Determine the surface of block 3.Between two stator poles of stator core 6 interval form stator slot, at the top slot of stator slot two sides to Inside extend to form semiclosed notch.
The inner face of rotor core 2 is inner concave shape cambered surface, and the outer end face corresponding with rotor core 2 of stator core 6 is outer Convexity arc surface, and the arc length of 2 inner face of rotor core is identical as the arc length of 6 outer end face of stator core.When rotor core 2 and stator Iron core 6 is inside and outside, and to magnetic linkage path curve is most short in this state when corresponding to, the magnetic linkage that engine direct drives generator with flywheel is maximum, The magnetic line of force 8 as shown in Figure 2.
It is wound with excitation winding 1 and armature winding 5 respectively in two stator poles of each stator core 6, each In a stator core 6, excitation winding 1 is identical with the setting position of armature winding 5, and excitation winding 1 and armature winding 5 are all made of Centralized winding.Excitation winding 1 in all stator cores 6 around to consistent, while the armature winding in all stator cores 6 5 around to also consistent, but excitation winding 1 and armature winding 5 around on the contrary, armature winding 5 and excitation winding 1 embedding figure As shown in Figure 3.
Armature winding 5 is connected with rectifier circuit realizes external direct current output, and rectifier circuit is as shown in figure 4, include One end of diode D1 ~ D4, coil L1 connect the anode of diode D1 and the cathode of diode D3, the other end of coil L1 simultaneously The anode of D2 and the cathode of diode D4 are connected simultaneously, diode D1 ~ D2 parallel connection is positive as the direct current output of rectifier circuit, Direct current output cathode of diode D3 ~ D4 parallel connection as rectifier circuit, coil L1 are armature winding 5.
Specific work process and working principle are as follows:
It includes two kinds of mounting means that this engine direct, which drives generator with flywheel, and a kind of mode is that stator core 6 utilizes horseshoe Shape bottom is fixed on stator fixed block 3, and stator fixed block 3 is fixed on motor body;Another way is stator core 6 It is directly anchored on motor body.
When the rotor rotates, when stator poles where rotor core 2 slides into a certain phase armature winding 5, the phase armature around The magnetic linkage of group 5 increases, when two stator poles in a pair of of stator core 6 are aligned with rotor core 2, the phase armature winding 5 Magnetic linkage reach maximum value.
When rotor core 2 skids off the stator poles at a certain 5 place of phase armature winding, the magnetic linkage of the phase armature winding 5 reduces, Until a stator poles in a pair of of stator core 6 are staggered completely with rotor core 2, the magnetic linkage of the phase armature winding 5 reaches most Small value.Make all external single-phase full bridge rectifier of armature winding 5, externally exports DC voltage.
The above descriptions are merely preferred embodiments of the present invention, is not to make other forms to the utility model Limitation, any person skilled in the art is changed or is modified as possibly also with the technology contents of the disclosure above equivalent The equivalent embodiment of variation.But it is all without departing from the content of the technical scheme of the utility model, the technology according to the utility model is real Matter any simple modification, equivalent variations and remodeling to the above embodiments, still fall within the guarantor of technical solutions of the utility model Protect range.

Claims (8)

1. a kind of engine direct drives generator with flywheel, the rotor including stator and relative rotation, it is characterised in that: rotor is arranged It in the outside of stator, is provided with multiple stator cores (6) in the outer surface of stator, each stator core (6) includes two stators Pole is wound with excitation winding (1) and armature winding (5), excitation winding (1) and armature winding (5) respectively in two stator poles It is located in the ipsilateral stator poles of corresponding stator core (6);
The inner surface of rotor is provided with rotor core (2) identical with stator core (6) number, stator core (6) and rotor Iron core (2) is inside and outside to cooperatively form the magnetic circuit that magnetic linkage passes through;
Stator core (6) is in horseshoe type, and bottom is embedded in the outer surface of stator fixed block (3), and the upper end two sides are as two Stator poles protrude from the surface of stator fixed block (3), and interval forms stator slot, the upper end slot of stator slot between two stator poles The two sides Kou Chu extend inwardly to form semiclosed notch.
2. engine direct according to claim 1 drives generator with flywheel, it is characterised in that: the rotor includes flywheel (7), the rotor core (2) is uniformly embedded in the inner wall of flywheel (7).
3. engine direct according to claim 2 drives generator with flywheel, it is characterised in that: the outer end of the rotor core It is provided with trapezoidal protrusion, rotor core (2) is installed in the inner wall of flywheel (7) by trapezoidal protrusion.
4. engine direct according to claim 2 drives generator with flywheel, it is characterised in that: the rotor core (2) Using permeability magnetic material, flywheel (7) uses non-magnet material.
5. engine direct according to claim 1 drives generator with flywheel, it is characterised in that: the stator includes stator Fixed block (3), the stator core (6) is uniformly embedded in the outer surface of stator fixed block (3), at stator fixed block (3) center Place is additionally provided with stator axis (4).
6. engine direct according to claim 1 drives generator with flywheel, it is characterised in that: the excitation winding (1) and Armature winding (5) is centralized winding, the excitation winding (1) on all stator cores (6) around to consistent, all stator iron Armature winding (5) on the heart (6) around to consistent, excitation winding (1) and armature winding (5) around to opposite.
7. engine direct according to claim 5 drives generator with flywheel, it is characterised in that: the stator fixed block (3) Using non-magnet material, the stator core (6) uses permeability magnetic material.
8. engine direct according to claim 1 drives generator with flywheel, it is characterised in that: the rotor core (2) Inner face is inner concave shape cambered surface, and stator core (6) outer end face corresponding with rotor core (2) is male type cambered surface, and rotor The arc length of iron core (2) inner face is identical as the arc length of stator core (6) outer end face.
CN201822161119.3U 2018-12-22 2018-12-22 A kind of engine direct drive generator with flywheel Expired - Fee Related CN209217918U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822161119.3U CN209217918U (en) 2018-12-22 2018-12-22 A kind of engine direct drive generator with flywheel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822161119.3U CN209217918U (en) 2018-12-22 2018-12-22 A kind of engine direct drive generator with flywheel

Publications (1)

Publication Number Publication Date
CN209217918U true CN209217918U (en) 2019-08-06

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822161119.3U Expired - Fee Related CN209217918U (en) 2018-12-22 2018-12-22 A kind of engine direct drive generator with flywheel

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109378957A (en) * 2018-12-22 2019-02-22 山东唐骏欧铃汽车制造有限公司 A kind of engine direct drive generator with flywheel

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109378957A (en) * 2018-12-22 2019-02-22 山东唐骏欧铃汽车制造有限公司 A kind of engine direct drive generator with flywheel
CN109378957B (en) * 2018-12-22 2024-07-09 山东唐骏欧铃汽车制造有限公司 Engine direct-drive flywheel type generator

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Granted publication date: 20190806